Current in a RL Circuit: Difference between revisions

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===A Mathematical Model===
===A Mathematical Model===


What are the mathematical equations that allow us to model this topic.  For example <math>{\frac{d\vec{p}}{dt}}_{system} = \vec{F}_{net}</math> where '''p''' is the momentum of the system and '''F''' is the net force from the surroundings.
'''''ΔV_battery + ΔV_resistor + ΔV_inductor = 0'''''
'''''Emf_battery - RI - L(dI/dt) = 0'''''


===A Computational Model===
===A Computational Model===

Revision as of 13:57, 5 December 2015

Claimed by Jake Sebring on December 3, 2015 at 11:10 AM

A resistor-inductor circuit is an electric circuit that contains both a resistor, R, and an inductor, L, and is powered by a current source. The energy conservation equation for a RL circuit is typically of the form: ΔV_battery + ΔV_resistor + ΔV_inductor = 0

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A Mathematical Model

ΔV_battery + ΔV_resistor + ΔV_inductor = 0 Emf_battery - RI - L(dI/dt) = 0

A Computational Model

How do we visualize or predict using this topic. Consider embedding some vpython code here Teach hands-on with GlowScript

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References

http://cnx.org/contents/7025ec30-2efe-449f-8475-089c3063433f@3.1:9/MATH-1508-(Laboratory)-Enginee